Exact(6)
Proposed CSFS antenna achieved improved peak gain at higher UWB band with large bandwidth (up to 12 GHz).
The measurement results indicated that the designed antenna achieved anticipated radiation performances and design effectiveness of the dual-polarized antenna in this paper was proved.
The PEDOT PSS antenna achieved a maximum gain of −8.6 dB, while the Cu antenna reached a gain of 2 dB.
The proposed antenna achieved a common impedance bandwidth of 25.5% and 39.5% in the lower and the upper bands at both input ports, ranged from 0.75 GHz to 0.97 GHz and from 1.73 GHz to 2.59 GHz respectively.
The area density of the one developed by L'Garde was 3.3 kg/m2, and the antenna achieved ± 0.28 mm surface flatness.
Ground test results showed that the reflector surface was rigidized by solar radiation in six hours at the temperature of 110 °C, and the antenna achieved 0.98 mm RMS surface accuracy after being rigidized [26].
Similar(54)
The proposed discrete lens antenna achieves directivity/gain values of 25.1/22 dBi.
The antenna achieves overall bandwidth from 2.43 to 2.47 GHz in all the operating modes without any impedance matching network.
Results show that the proposed antenna achieves a wide bandwidth ranging from 880 MHz to 2720 MHz (102%).
An antenna prototype has been fabricated and measured, showing that the antenna achieves a 10 dB return loss impedance bandwidth of around 13.7%, enclosing a 3 dB axial ratio (AR) bandwidth of more than 10.6%.
The proposed antenna achieves more than 15.7% on-body radiation efficiency in the whole ISM frequency band and the peak 1 g average SAR less than 0.18 W/kg when it is placed directly over the skin of body model.
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